We investigate a purely stellar dynamical solution to the Final Parsec Problem. Galactic nuclei resulting from major mergers are not spherical, but show some degree of triaxiality. With $N$-body simulations, we show that massive black hole binaries (MBHB) hosted by them will continuously interact with stars on centrophilic orbits and will thus inspiral---in much less than a Hubble time---down to separations at which gravitational wave (GW) emission is strong enough to drive them to coalescence. Such coalescences will be important sources of GWs for future space-borne detectors such as the {\it Laser Interferometer Space Antenna} (LISA). Based on our results, we expect that LISA will see between $\sim 10$ to $\sim {\rm few} \times 10^2$ such...
Motivated by the recent detection of gravitational waves from the black hole binary merger GW150914,...
Coalescing massive black hole binaries (MBHBs) of $10^4-7~\rm M_\odot$, forming in the aftermath of...
Massive black hole (MBH) binaries, formed as a result of galaxy mergers, are expected to harden by d...
We investigate a purely stellar dynamical solution to the Final Parsec Problem. Galactic nuclei resu...
We investigate a purely stellar dynamical solution to the Final Parsec Problem. Galactic nuclei resu...
The coalescence of massive black hole binaries is one of the main sources of low-frequency gravitati...
We study the long-term evolution of massive black hole binaries (MBHBs) at the centers of galaxies u...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
Coalescence of binary supermassive black holes (SBHs) would constitute the strongest sources of grav...
We calculate the expected nHz--$\mu$Hz gravitational wave (GW) spectrum from coalescing Massive Blac...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Massive black hole (MBH) binaries, formed as a result of galaxy mergers, are expected to harden by d...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Binary supermassive black holes form naturally in galaxy mergers, but their long-termevolution is un...
Motivated by the recent detection of gravitational waves from the black hole binary merger GW150914,...
Motivated by the recent detection of gravitational waves from the black hole binary merger GW150914,...
Coalescing massive black hole binaries (MBHBs) of $10^4-7~\rm M_\odot$, forming in the aftermath of...
Massive black hole (MBH) binaries, formed as a result of galaxy mergers, are expected to harden by d...
We investigate a purely stellar dynamical solution to the Final Parsec Problem. Galactic nuclei resu...
We investigate a purely stellar dynamical solution to the Final Parsec Problem. Galactic nuclei resu...
The coalescence of massive black hole binaries is one of the main sources of low-frequency gravitati...
We study the long-term evolution of massive black hole binaries (MBHBs) at the centers of galaxies u...
We present preliminary results from self-consistent, high resolution direct N-body simulations of ma...
Coalescence of binary supermassive black holes (SBHs) would constitute the strongest sources of grav...
We calculate the expected nHz--$\mu$Hz gravitational wave (GW) spectrum from coalescing Massive Blac...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Massive black hole (MBH) binaries, formed as a result of galaxy mergers, are expected to harden by d...
This paper studies the formation and evolution of binary supermassive black holes (SMBHs) in rotatin...
Binary supermassive black holes form naturally in galaxy mergers, but their long-termevolution is un...
Motivated by the recent detection of gravitational waves from the black hole binary merger GW150914,...
Motivated by the recent detection of gravitational waves from the black hole binary merger GW150914,...
Coalescing massive black hole binaries (MBHBs) of $10^4-7~\rm M_\odot$, forming in the aftermath of...
Massive black hole (MBH) binaries, formed as a result of galaxy mergers, are expected to harden by d...